Structural insights into the globular tails of the human type v myosins Myo5a, Myo5b, And Myo5c.

Vertebrate type V myosins (MyoV) Myo5a, Myo5b, and Myo5c mediate transport of several different cargoes. All MyoV paralogs bind to cargo complexes mainly by their C-terminal globular domains. In absence of cargo, the globular domain of Myo5a inhibits its motor domain. Here, we report low-resolution...

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Main Authors: Hana Velvarska, Dierk Niessing
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3858360?pdf=render
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spelling doaj-6fbd6593a69c48d8829f224e4e770e042020-11-25T01:27:33ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01812e8206510.1371/journal.pone.0082065Structural insights into the globular tails of the human type v myosins Myo5a, Myo5b, And Myo5c.Hana VelvarskaDierk NiessingVertebrate type V myosins (MyoV) Myo5a, Myo5b, and Myo5c mediate transport of several different cargoes. All MyoV paralogs bind to cargo complexes mainly by their C-terminal globular domains. In absence of cargo, the globular domain of Myo5a inhibits its motor domain. Here, we report low-resolution SAXS models for the globular domains from human Myo5a, Myo5b, and Myo5c, which suggest very similar overall shapes of all three paralogs. We determined the crystal structures of globular domains from Myo5a and Myo5b, and provide a homology model for human Myo5c. When we docked the Myo5a crystal structure into a previously published electron microscopy density of the autoinhibited full-length Myo5a, only one domain orientation resulted in a good fit. This structural arrangement suggests the participation of additional region of the globular domain in autoinhibition. Quantification of the interaction of the Myo5a globular domain with its motor complex revealed a tight binding with dissociation half-life in the order of minutes, suggesting a rather slow transition between the active and inactive states.http://europepmc.org/articles/PMC3858360?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hana Velvarska
Dierk Niessing
spellingShingle Hana Velvarska
Dierk Niessing
Structural insights into the globular tails of the human type v myosins Myo5a, Myo5b, And Myo5c.
PLoS ONE
author_facet Hana Velvarska
Dierk Niessing
author_sort Hana Velvarska
title Structural insights into the globular tails of the human type v myosins Myo5a, Myo5b, And Myo5c.
title_short Structural insights into the globular tails of the human type v myosins Myo5a, Myo5b, And Myo5c.
title_full Structural insights into the globular tails of the human type v myosins Myo5a, Myo5b, And Myo5c.
title_fullStr Structural insights into the globular tails of the human type v myosins Myo5a, Myo5b, And Myo5c.
title_full_unstemmed Structural insights into the globular tails of the human type v myosins Myo5a, Myo5b, And Myo5c.
title_sort structural insights into the globular tails of the human type v myosins myo5a, myo5b, and myo5c.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Vertebrate type V myosins (MyoV) Myo5a, Myo5b, and Myo5c mediate transport of several different cargoes. All MyoV paralogs bind to cargo complexes mainly by their C-terminal globular domains. In absence of cargo, the globular domain of Myo5a inhibits its motor domain. Here, we report low-resolution SAXS models for the globular domains from human Myo5a, Myo5b, and Myo5c, which suggest very similar overall shapes of all three paralogs. We determined the crystal structures of globular domains from Myo5a and Myo5b, and provide a homology model for human Myo5c. When we docked the Myo5a crystal structure into a previously published electron microscopy density of the autoinhibited full-length Myo5a, only one domain orientation resulted in a good fit. This structural arrangement suggests the participation of additional region of the globular domain in autoinhibition. Quantification of the interaction of the Myo5a globular domain with its motor complex revealed a tight binding with dissociation half-life in the order of minutes, suggesting a rather slow transition between the active and inactive states.
url http://europepmc.org/articles/PMC3858360?pdf=render
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AT dierkniessing structuralinsightsintotheglobulartailsofthehumantypevmyosinsmyo5amyo5bandmyo5c
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